Fault-tolerant Technology for Quantum Information Processing and Its Implementation Methods|NTT R&D Website
decoding even if some errors occur. Fault-tolerant quantum computing using quantum error-correcting codes
https://www.rd.ntt/e/research/JN202103_11045.html
Toward Early Fault-tolerant Quantum Computing | NTT R&D Website
Toward Early Fault-tolerant Quantum Computing | NTT R&D Website NTT R&D Website Research&Activity
https://www.rd.ntt/e/research/JN202309_23094.html
Suguru Endo | NTT R&D Website
Quantum error mitigation, NISQ, Bosonic quantum error correction, Early fault-tolerant quantum computing
https://www.rd.ntt/e/organization/researcher/special/s_095.html
Design and Development of Superconducting-quantum-computer System | NTT R&D Website
needed. NTT constructed a compiler for long-term fault-tolerant quantum computing and proposed methods
https://www.rd.ntt/e/research/JN202309_23089.html
Security Based on Quantum Information Technology and Data Protection of Quantum Information|NTT R&D Website
. Delfosse, “A Scalable Decoder Micro-architecture for Fault-tolerant Quantum Computing,” arXiv:2001.06598
https://www.rd.ntt/e/research/JN202104_12240.html
Activities toward New-principle Computers|NTT R&D Website
a theoretical study on what type of layered structure a fault-tolerant quantum computer should adopt
https://www.rd.ntt/e/research/JN202103_10916.html
F01_leaf_e.pdf
connects noisy intermediate-scale quantum computers with large-scale fault-tolerant quantum computer (FTQC
https://www.rd.ntt/forum/2023/doc/F01_leaf_e.pdf
Speakers | ISNTT2026
Milano Talk title TBA Takaya Matsuura RIKEN Fault-Tolerant Quantum Computation in Optical Systems Under
https://www.rd.ntt/brl/event/isntt2026/speakers.html
Designing Quantum Computers|NTT R&D Website
, while the dark-green area is fault-tolerant universal quantum computers. 2. NISQ processors and
https://www.rd.ntt/e/research/JN202103_10981.html
ISNTT2013 - Invited Speaker - International Symposium on Nanoscale Transport and Technology 2013
. Chow — IBM "Building towards a superconducting fault-tolerant quantum computer" David Cox — NPL
https://www.rd.ntt/brl/event/isntt2013/invited_speakers.html
ISNTT2017 - International School and Symposium on Nanoscale Transport and Photonics
Phonons" Maika Takita — IBM "Towards Fault-tolerant Quantum Computing using Superconducting Qubits" Xiaobo
https://www.rd.ntt/brl/event/isntt2017/speakers.html
Time-resolved Measurement of Ambipolar Plasmon Transport in Semiconductor Composite Quantum Wells | NTT R&D Website
Insulators for Fault-tolerant Quantum Computing,” NTT Technical Review, Vol. 15, No. 7, 2017. [2]H. Kamata, H
https://www.rd.ntt/e/research/JN202303_21262.html
Quantum Error Mitigation: A Key Approach to Overcoming the Barriers to Practical Application of Quantum Technology | NTT R&D Website
qubits required for early-stage fault-tolerant quantum computing by as much as 80%. I believe hybrid
https://www.rd.ntt/e/research/JN202511_37036.html
Toward Creation of a System Architecture for Quantum Computers | NTT R&D Website
Progress Toward Early Fault-tolerant Quantum Computing Contact our laboratory Return to Research&Activity
https://www.rd.ntt/e/research/JN202309_23082.html
Overview of Quantum Optics and Optical Materials Research
following pages. We have proposed fault-tolerant simple quantum protocol for bit-commitment that is
https://www.rd.ntt/e/brl/result/activities/file/report01/E/report16.html
遠藤 傑 | NTT R&D Website
Reduction Technique: Applications from the NISQ to the Fault-Tolerant Quantum Computing Eras, PRX Quantum, 3
https://www.rd.ntt/organization/researcher/special/s_095.html
誤り耐性量子コンピュータの早期実現に向けた取り組み | NTT R&D Website
the NISQ to the Fault-Tolerant Quantum Computing Eras,”PRX Quantum, Vol. 3, No. 1, 010345, March 2022
https://www.rd.ntt/research/JN202309_23094.html
Optical Technologies for Optical Quantum Computing with Continuous Variables | NTT R&D Website
fault-tolerant operations, which use GKP codes to error-correct large-scale quantum entangled states
https://www.rd.ntt/e/research/JN202304_21560.html
Broadband Continuous-wave Optical Quadrature Squeezer for Ultra-fast Optical Quantum Computers | NTT R&D Website
. Takeda and A. Furusawa, “Toward Large-scale Fault-tolerant Universal Photonic Quantum Computing,” APL
https://www.rd.ntt/e/research/JN202206_18572.html
Heterogeneous Materials and Devices Research Group|Device Technology Laboratories|NTT R&D Website
light source toward fault-tolerant large-scale universal optical quantum computers ・March 6, 2023 43-GHz
https://www.rd.ntt/e/dtl/technology/heterogeneous_materials_and_devices_research_group_ntt_device_technology_laboratories_ntt_rd_website.html
Quantum Error Mitigation and Its Progress | NTT R&D Website
Fault-tolerant Quantum Computing Contact our laboratory Return to Research&Activity Related content
https://www.rd.ntt/e/research/JN202309_23092.html
NTT Communication Science Laboratories Open House 2018 Program
? High-speed quantum computations with uninitialized qubits Designing fault-tolerant networks Maximizing
https://www.rd.ntt/cs/event/openhouse/2018/program_en.html
NTT Communication Science Laboratories Open House 2018
quantum memory? High-speed quantum computations with uninitialized qubits Designing fault-tolerant
https://www.rd.ntt/cs/event/openhouse/2018/en_simple/index_en.html
Call_for_papers_r3
a superconducting fault-tolerant quantum computer" David Cox — NPL "Fabrication and Verification of
https://www.rd.ntt/brl/event/isntt2013/download/Call_for_papers_r3.pdf
Think about Your Definition of a Good Idea and Believe in Your Idea|NTT R&D Website
using light waves is a large-scale, fault-tolerant universal optical quantum computer, which is expected
https://www.rd.ntt/e/research/JN202111_16046.html
Theoretical Approach to Overcome Difficulties in Implementing Quantum Computers|NTT R&D Website
fault-tolerant quantum computers require implementation technologies that meet extremely strict
https://www.rd.ntt/e/research/JN202103_11039.html
Where There Is Will, There Is a Way. Researchers, Be Long-term Optimists|NTT R&D Website
Program launched in December 2020 entitled “Realization of a fault-tolerant universal quantum computer
https://www.rd.ntt/e/research/JN202109_15211.html
量子コンピュータの設計に向けて|NTT R&D Website
ピュータで遂行できるタスクの領域、深緑色は誤り耐性万能量子コンピュータ(FTQC:Fault Tolerant Quantum Computer)で遂行できるタスクの領域をそれぞれ表しています。 *1量子コヒ
https://www.rd.ntt/research/JN202103_10981.html
Extracting Quantum Power by Using Algorithms and Their Verification | NTT R&D Website
sequence of elementary gates. Verification methods for quantum computing Quantum computers are susceptible
https://www.rd.ntt/e/research/JN202304_21634.html
A Long-lived Tunable Qubit for Bosonic Quantum Computing|NTT R&D Website
A Long-lived Tunable Qubit for Bosonic Quantum Computing|NTT R&D Website NTT R&D Website Research
https://www.rd.ntt/e/research/JN202103_11371.html
Aiming to Build Neural Networks and Quantum Computers through Analog Manipulation of Light Waves | NTT R&D Website
noise. Our goal is to build a fault-tolerant optical quantum computer by around 2030 and an all-optical
https://www.rd.ntt/e/research/JN202411_30167.html
A Computing System for Supporting Application Development Using Ising Machines | NTT R&D Website
-computer System Quantum Error Mitigation and Its Progress Toward Early Fault-tolerant Quantum Computing
https://www.rd.ntt/e/research/JN202309_23087.html
Updates | NTT R&D Website
by Using a Thin-film Growth Method sui generis 12/04/2023 Toward Early Fault-tolerant Quantum
https://www.rd.ntt/e/update_information/
量子情報処理によるセキュリティと量子情報のデータ保護|NTT R&D Website
:“Quantum error mitigation for fault-tolerant quantum computing,” arXiv preprint arXiv:2010.03887, 2020. (8
https://www.rd.ntt/research/JN202104_12240.html
超伝導量子コンピュータのシステムの設計と開発 | NTT R&D Website
-Tolerant Quantum Computing,”2023 Symposium on VLSI Technology and Circuits, 2023. (5)W.Liao, Y.Suzuki, T
https://www.rd.ntt/research/JN202309_23089.html
NTT R&D Forum - Road to IOWN 2022|NTT R&D Website
fractional quasiparticles Toward fault-tolerant quantum computation B-F10IOWN FutureNatural wearable bio
https://www.rd.ntt/e/forum/2022/exhibit.html
untitled
(Invited) W. D. Oliver Massachusetts Institute of Technology Tu-06 Towards Fault-tolerant Quantum Computing
https://www.rd.ntt/brl/event/isntt2017/download/Oral_Program_r2.pdf
First Experimental Demonstration of a Phenomenon That Had Not Been Verified for More Than 20 Years Since Its Theory Was Proposed | NTT R&D Website
of that research, i.e., the new properties of electrons may be used for fault-tolerant quantum
https://www.rd.ntt/e/research/JN202312_24208.html
Quantum Optical State Control Research Group | NTT Basic Research Laboratories | NTT R&D Website
. Nemoto, and WJ. Munro Hybrid-system approach to fault-tolerant quantum communication Phys. Rev. A 87 (5
https://www.rd.ntt/e/brl/group_introduction/group_009.html
Quantum Information Technology Based on Superconducting Quantum Circuits | NTT R&D Website
will be necessary to achieve a practical and fault-tolerant universal quantum computer. This is because
https://www.rd.ntt/e/research/JN202304_21572.html
量子光制御研究グループ|NTT物性科学基礎研究所|NTT R&D Website
. Nemoto, and WJ. Munro Hybrid-system approach to fault-tolerant quantum communication Phys. Rev. A 87 (5
https://www.rd.ntt/brl/group_introduction/group_009.html
NTT R&D FORUM 2025 Event Report | NTT R&D Website
covered the next-generation communications infrastructure; and "Quantum Computing of Light Illuminating
https://www.rd.ntt/e/forum/2025/
Complete_Program_oral_and_poster_r7.pdf
System Fr-08 : Spin-based Quantum Computing in Silicon (Invited) Andrew Dzurak University of New South
https://www.rd.ntt/brl/event/isntt2015/download/Complete_Program_oral_and_poster_r7.pdf
NTTBrl_honbun_E_260302.indd
applications to fault-tolerant quantum computation. However, achieving such coupling is challenging, because
https://www.rd.ntt/brl/result/activities/file/annual_report/NTTBrl_E_260310_print.pdf
Annual_report_2019_E.pdf
the distance increases. Clarification of the edge state is important for realizing fault-tolerant
https://www.rd.ntt/e/brl/result/activities/file/annual_report/Annual_report_2019_E.pdf
<8F4390B394C5313032362E706466>
Superconducting Qubits (Invited) W. D. Oliver Massachusetts Institute of Technology Tu-06 Towards Fault-tolerant
https://www.rd.ntt/brl/event/isntt2017/download/Complete_Program_r1.pdf
Research Activities in NTT Basic Research Laboratories
network on an array of nanometer-scale Si pillars. (Page 15) Quantum Computer with Superconductor Readout
https://www.rd.ntt/e/brl/result/activities/file/report01/BRLReports_E.pdf
Complete Program (Oral+Poster)_21031024_ver2
: Building towards a superconducting fault-tolerant quantum computer (Invited) Jerry M. Chow IBM 11:40~12:00
https://www.rd.ntt/brl/event/isntt2013/download/Complete_Program_oral_and_poster_r6.pdf
BRLreport_2006J.pdf
https://www.rd.ntt/brl/result/activities/file/report06/BRLreport_2006J.pdf
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